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ICP0 参与逆转潜伏的单纯疱疹病毒 1 的沉默。

Activities of ICP0 involved in the reversal of silencing of quiescent herpes simplex virus 1.

机构信息

Department of Microbiology and Molecular Genetics, University of Pittsburgh School of Medicine, 514 Bridgeside Point II, 450 Technology Dr., Pittsburgh, PA 15219, USA.

出版信息

J Virol. 2011 May;85(10):4993-5002. doi: 10.1128/JVI.02265-10. Epub 2011 Mar 16.

Abstract

ICP0 is a transcriptional activating protein required for the efficient replication and reactivation of latent herpes simplex virus 1 (HSV-1). Multiple regions of ICP0 contribute its activity, the most prominent of which appears to be the RING finger, which confers E3 ubiquitin ligase activity. A region in the C terminus of ICP0 has also been implicated in several activities, including the disruption of a cellular repressor complex, REST/CoREST/HDAC1/2/LSD1. We used quiescent infection of MRC-5 cells with a virus that does not express immediate-early proteins, followed by superinfection with various viral mutants to quantify the ability of ICP0 variants to reactivate gene expression and alter chromatin structure. Superinfection with wild-type virus resulted in a 400-fold increase in expression from the previously quiescent d109 genome, the removal of heterochromatin and histones from the viral genome, and an increase in histone marks associated with activated transcription. RING finger mutants were unable to reactivate transcription or remove heterochromatin from d109, while mutants that are unable to bind CoREST activate gene expression from quiescent d109, albeit to a lesser degree than the wild-type virus. One such mutant, R8507, resulted in the partial removal of heterochromatin. Infection with R8507 did not result in the hyperacetylation of H3 and H4. The results demonstrate that (i) consistent with previous findings, the RING finger domain of ICP0 is required for the activation of quiescent genomes, (ii) the RF domain is also crucial for the ultimate removal of repressive chromatin, (iii) activities or interactions specified by the carboxy-terminal region of ICP0 significantly contribute to activation, and (iv) while the effects of the R8507 on chromatin are consistent with a role for REST/CoREST/HDAC1/2/LSD1 in the repression of quiescent genomes, the mutation may also affect other activities involved in derepression.

摘要

ICP0 是一种转录激活蛋白,对于潜伏性单纯疱疹病毒 1(HSV-1)的有效复制和重新激活是必需的。ICP0 的多个区域都对其活性有贡献,其中最突出的似乎是 RING 指结构域,它赋予 E3 泛素连接酶活性。ICP0 的 C 末端的一个区域也与多种活性有关,包括破坏细胞抑制复合物 REST/CoREST/HDAC1/2/LSD1。我们使用不会表达早期蛋白的病毒对 MRC-5 细胞进行静止感染,然后用各种病毒突变体进行超感染,以量化 ICP0 变体重新激活基因表达和改变染色质结构的能力。野生型病毒的超感染导致先前静止的 d109 基因组的表达增加了 400 倍,病毒基因组中的异染色质和组蛋白被去除,并且与激活转录相关的组蛋白标记增加。RING 指结构域突变体无法重新激活转录或从 d109 中去除异染色质,而无法结合 CoREST 的突变体虽然能激活从静止的 d109 中的基因表达,但程度低于野生型病毒。一种这样的突变体 R8507 导致部分异染色质的去除。用 R8507 感染不会导致 H3 和 H4 的过度乙酰化。结果表明,(i)与先前的发现一致,ICP0 的 RING 指结构域是激活静止基因组所必需的,(ii)RF 结构域对于最终去除抑制性染色质也是至关重要的,(iii)ICP0 的羧基末端区域指定的活性或相互作用显著有助于激活,(iv)虽然 R8507 对染色质的影响与 REST/CoREST/HDAC1/2/LSD1 在抑制静止基因组中的作用一致,但该突变也可能影响其他参与去抑制的活性。

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